首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Tissue response to in situ polymerization of a new two-solution bone cement: evaluation in a sheep model.
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Tissue response to in situ polymerization of a new two-solution bone cement: evaluation in a sheep model.

机译:组织对新的两溶液骨水泥的原位聚合反应:在绵羊模型中评估。

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A two-solution bone cement (2-SC) was evaluated in a non-load bearing sheep model that simulated insertion of a cemented total joint replacement. A commercial powder-liquid bone cement formulation (Palacos R) was used as the control. The systemic response to the two cements was determined by monitoring changes in arterial blood pressure (ABP) and serum concentrations of methyl methacrylate monomer at intervals after insertion of the cement. The short-term tissue response to the two cements was assessed by quantifying histomorphometric parameters of new bone formation at 2, 4, and 12 weeks postsurgery. Intraoperatively, injection and pressurization of bone cement were well tolerated, with no significant changes in ABP in either group and no detectable circulating monomer in any animal. Several interesting trends were identified in the histomorphometry data. In the trabecular specimens, new bone formation immediately adjacent to the cement mantle was apparently suppressed in the first 2 weeks postsurgery, increased dramatically at 4 weeks, and then returned to baseline values by 12 weeks. This pattern was seen with both Palacos and 2-SC. In the cortical specimens, new bone formation was reduced on the endosteal surface when compared with the periosteal surface, with this effect being more noticeable at 2 and 4 weeks than at 12 weeks. There were no significant histopathological findings in either the bone or the draining lymph nodes. These data indicate that the biological response to 2-SC is substantially equivalent to that of Palacos R. Additional testing in a functional, load-bearing animal model is now recommended to more fully characterize the long-term biological response to 2-SC and to determine the mechanical performance of this new cement in vivo.
机译:在非承重绵羊模型中评估了两种溶液的骨水泥(2-SC),该模型模拟了人工骨全关节置换术的插入。商业粉末-液体骨水泥制剂(Palacos R)用作对照。通过在插入水泥后的间隔监测动脉血压(ABP)和甲基丙烯酸甲酯单体的血清浓度的变化,确定对这两种水泥的全身反应。通过量化术后2周,4周和12周的新骨形成的组织形态计量学参数,评估了对两种胶结剂的短期组织反应。术中对骨水泥的注射和加压耐受良好,两组中ABP均无明显变化,任何动物中均未检测到循环单体。在组织形态计量学数据中发现了一些有趣的趋势。在骨小梁标本中,在手术后的前两周内明显抑制了紧邻水泥衬套的新骨形成,在4周时急剧增加,然后在12周后恢复到基线值。 Palacos和2-SC都可以看到这种模式。在皮质标本中,与骨膜表面相比,骨膜内表面上的新骨形成减少了,这种作用在2周和4周时比在12周时更明显。在骨骼或引流淋巴结中均未发现明显的组织病理学发现。这些数据表明,对2-SC的生物学反应与Palacos R基本相同。现在,建议在功能性,负重动物模型中进行其他测试,以更全面地表征对2-SC和对SC的长期生物学响应。确定这种新水泥在体内的机械性能。

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